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Development of probabilistic emission inventories of air toxics for Jacksonville, Florida

机译:佛罗里达州杰克逊维尔市空气中毒物的概率排放清单的编制

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摘要

Probabilistic emission inventories were developed for 1,3-butadiene, mercury (Hg), arsenic (As), benzene, formaldehyde, and lead for Jacksonville, FL. To quantify inter-unit variability in empirical emission factor data, the Maximum Likelihood Estimation (MLE) method or the Method of Matching Moments was used to fit parametric distributions. For data sets that contain nondetected measurements, a method based upon MLE was used for parameter estimation. To quantify the uncertainty in urban air toxic emission factors, parametric bootstrap simulation and empirical bootstrap simulation were applied to uncensored and censored data, respectively. The probabilistic emission inventories. were developed based on the product of the uncertainties in the emission factors and in the activity factors. The uncertainties in the urban air toxics emission inventories range from as small as -25 to +30% for Hg to as large as -83 to +243% for As. The key sources of uncertainty in the emission inventory for each toxic are identified based upon sensitivity analysis. Typically, uncertainty in the inventory of a given pollutant can be attributed primarily to a small number of source categories. Priorities for improving the inventories and for refining the probabilistic analysis are discussed.
机译:针对佛罗里达州杰克逊维尔市的1,3-丁二烯,汞(Hg),砷(As),苯,甲醛和铅开发了概率排放清单。为了量化经验排放因子数据中的单元间变异性,使用了最大似然估计(MLE)方法或匹配矩方法来拟合参数分布。对于包含未检测到的测量的数据集,使用基于MLE的方法进行参数估计。为了量化城市空气中有毒气体排放因子的不确定性,分别将参数自举模拟和经验自举模拟分别应用于未经审查和经审查的数据。概率排放清单。基于排放因子和活动因子不确定性的乘积来开发。城市空气中毒物排放清单的不确定性范围从Hg的小至-25%到+ 30%,As的小至-83%到+ 243%。根据敏感性分析确定每种有毒物质排放清单中不确定性的关键来源。通常,给定污染物清单中的不确定性可以主要归因于少量的源类别。讨论了改进库存和完善概率分析的优先级。

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